Feedback -- from stars and supermassive black holes -- is the bottleneck of our understanding on galaxy formation: it is likely to be critical, but neither the working mechanism nor the impact is clear. Supernovae (SNe), the dominant feedback force associated with stars, is the subject of this thesis. We use high-resolution, 3D hydrodynamic simulations to study: (i) how a SN blast wave imparts energy to a multiphase ISM; (ii) how multiple SNe regulate a multiphase ISM; (iii) how SNe drive galactic outflows. We focus on better understanding the physics, quantifying the impacts, and testing the simulations against observations
We study the implementation of mechanical feedback from supernovae (SNe) and stellar mass loss in ga...
We study the implementation of mechanical feedback from supernovae (SNe) and stellar mass loss in ga...
International audienceTo better understand the impact of supernova (SN) explosions on the evolution ...
Star formation (SF) has been continuous since the Universe was 200 million years old. It occurs in t...
In this thesis I examine supernova feedback in hydrodynamical simulations of galaxy disks. Understan...
We use cosmological simulations in order to study the effects of supernova (SN) feedback on the form...
International audienceContext. What exactly controls star formation in the Galaxy remains controvers...
International audienceContext. What exactly controls star formation in the Galaxy remains controvers...
International audienceContext. What exactly controls star formation in the Galaxy remains controvers...
International audienceContext. What exactly controls star formation in the Galaxy remains controvers...
We investigate phenomenological models of star formation and supernova feedback in N-body/SPH simula...
We use cosmological simulations in order to study the effects of supernova (SN) feedback on the form...
In this thesis I examine supernova feedback in hydrodynamical simulations of galaxy disks. Understan...
International audienceContext. What exactly controls star formation in the Galaxy remains controvers...
International audienceTo better understand the impact of supernova (SN) explosions on the evolution ...
We study the implementation of mechanical feedback from supernovae (SNe) and stellar mass loss in ga...
We study the implementation of mechanical feedback from supernovae (SNe) and stellar mass loss in ga...
International audienceTo better understand the impact of supernova (SN) explosions on the evolution ...
Star formation (SF) has been continuous since the Universe was 200 million years old. It occurs in t...
In this thesis I examine supernova feedback in hydrodynamical simulations of galaxy disks. Understan...
We use cosmological simulations in order to study the effects of supernova (SN) feedback on the form...
International audienceContext. What exactly controls star formation in the Galaxy remains controvers...
International audienceContext. What exactly controls star formation in the Galaxy remains controvers...
International audienceContext. What exactly controls star formation in the Galaxy remains controvers...
International audienceContext. What exactly controls star formation in the Galaxy remains controvers...
We investigate phenomenological models of star formation and supernova feedback in N-body/SPH simula...
We use cosmological simulations in order to study the effects of supernova (SN) feedback on the form...
In this thesis I examine supernova feedback in hydrodynamical simulations of galaxy disks. Understan...
International audienceContext. What exactly controls star formation in the Galaxy remains controvers...
International audienceTo better understand the impact of supernova (SN) explosions on the evolution ...
We study the implementation of mechanical feedback from supernovae (SNe) and stellar mass loss in ga...
We study the implementation of mechanical feedback from supernovae (SNe) and stellar mass loss in ga...
International audienceTo better understand the impact of supernova (SN) explosions on the evolution ...